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萘醌-钴(III)原型物的性质和反应性研究,用于生物还原前药。

A study on the properties and reactivity of naphthoquinone-cobalt(III) prototypes for bioreductive prodrugs.

机构信息

Instituto de Química, Universidade Federal Fluminense, Niterói, RJ 24020-141, Brazil.

Instituto de Química, Departamento de Bioquímica, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ 21949-909, Brazil.

出版信息

J Inorg Biochem. 2014 Mar;132:37-44. doi: 10.1016/j.jinorgbio.2013.11.007. Epub 2013 Nov 27.

Abstract

Our group has recently initiated a study on the development of new prototypes for bioreductive prodrugs, based on Co(III) complexes with the ligand 2,2'-bis(3-hydroxy-1,4-naphthoquinone), H2bhnq. The focus of this work is to investigate the dissociation of bhnq(-2) from the complex upon reduction, and the effects of pH, redox potential, oxygen concentration and nature of the auxiliary ligands on this reaction. The bhnq(2-) ligand is a "non-cytotoxic" agent that was chosen as a probe for the reactivity studies due to its suitable chromophoric properties, at the same time that it resembles more cytotoxic naphthoquinones relevant for cancer therapy. In this way, two Co(III) complexes [Co(bhnq)(L1)]BF4·H2O (1) and [Co(bhnq)(L2)]BF4·H2O (2) (L1=N,N'-bis(pyridin-2-ylmethyl)ethylenediamine and L2=N,N'-dimethyl-N,N'-bis(pyridin-2-ylmethyl)ethylenediamine) were synthesized and fully characterized. The gallium analogs [Ga(bhnq)(L1)]NO3·3H2O (3) and [Ga(bhnq)(L2)]NO3·3H2O (4) were also prepared for helping with the assignments of the redox properties of the cobalt complexes and the structure of 2. Cyclic voltammetry analysis revealed a pH-independent quasi-reversible Co(III)/Co(II) process at -0.22 and -0.08V vs NHE for 1 and 2, respectively. An O2-dependent dissociation of bhnq(2-) was observed for the reaction of 1 with ascorbic acid. For 2, the dissociation of bhnq(2-) was found to be independent on the concentration of O2 and faster than in 1, with little influence of the pH on both complexes. The difference in reactivity between 1 and 2 and their redox properties, among other factors, suggests that 1 undergoes redox cycling, pointed out as a key feature for a prodrug to achieve hypoxic selectivity.

摘要

我们小组最近启动了一项研究,旨在开发基于配体 2,2'-双(3-羟基-1,4-萘醌)的新型还原型前药钴(III)配合物的新原型。这项工作的重点是研究还原时 bhnq(-2)从配合物中的解离以及 pH 值、氧化还原电位、氧浓度和辅助配体的性质对该反应的影响。bhnq(2-)配体是一种“非细胞毒性”试剂,由于其合适的发色性质,被选为反应性研究的探针,同时它类似于更具细胞毒性的萘醌类药物,与癌症治疗有关。通过这种方式,合成并充分表征了两种钴(III)配合物[Co(bhnq)(L1)]BF4·H2O(1)和[Co(bhnq)(L2)]BF4·H2O(2)(L1=N,N'-双(吡啶-2-基甲基)乙二胺和 L2=N,N'-二甲基-N,N'-双(吡啶-2-基甲基)乙二胺)。还制备了镓类似物[Ga(bhnq)(L1)]NO3·3H2O(3)和[Ga(bhnq)(L2)]NO3·3H2O(4),以帮助确定钴配合物的氧化还原性质和 2 的结构。循环伏安分析显示,1 和 2 的 Co(III)/Co(II)过程在 pH 独立的准可逆范围内,分别为-0.22 和-0.08V 相对于 NHE。观察到 1 与抗坏血酸反应时,bhnq(2-)的 O2 依赖性解离。对于 2,发现 bhnq(2-)的解离与 O2 浓度无关,且比 1 快,两种配合物的 pH 值对其影响都很小。1 和 2 的反应性差异及其氧化还原性质等因素表明,1 经历了氧化还原循环,这被指出是前药实现缺氧选择性的关键特征。

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